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Updated: Jan 8, 2026

Ammonia Synthesis at Low Pressure
Published on: August 23, 2017
Sustainable Green Ammonia Production from Water and Air at Room Temperature
Xue-Feng Sun1, Xia Kang1, Miao-Miao Shi1
1Key Laboratory of Automobile Materials (Jilin University), Ministry of Education, School of Materials Science and Engineering Jilin University, Changchun 130022, China.
Abstract:
Plasma-electrocatalytic ammonia (NH3) synthesis using renewable energy as an input is an ideal and sustainable method for NH3 production. However, its practical application is hindered by the inferior performance of the plasma nitrogen oxidation reaction (pNOR) and its inability to proceed synchronously with the electrochemical nitrate-nitrite reduction reaction (eNOx-RR) process. Herein, a bifunctional Co-P catalyst supported on Ni foam (Co-P/NF) achieves outstanding performance in both pNOR (NOx- yield: 171.3 mmol h-1) and eNOx-RR (NH3 yield: 319.2 mg h-1 cm-2; Faraday efficiency: 99.2%). More importantly, an integrated scaled-up device is further constructed, enabling gram-scale NH3 production (1.53 g h-1) directly from air and water. Experimental studies reveal that P-doping modulates the catalyst structure, facilitates N2 adsorption, and accelerates the pNOR rate-determining step. Meanwhile, it optimizes H2O dissociation to supply abundant H* species for the hydrogenation process in the eNOx-RR. This synergistic mechanism collectively enables the remarkable NH3 yield.
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